Domains of movement in the zebrafish gastrula

D. Kane, R. M. Warga
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引用次数: 15

Abstract

Abstract The mechanisms controlling cell movements during vertebrate gastrulation are not known. Studies using the zebrafish embryo show promise at identifying these mechanisms, combining an embryo that is accessible and optically clear with mutations that affect early development. In this article we describe the movements of cells during the midblastula, early epiboly and gastrulation stages of the zebrafish, correlating 'domains of movement' with embryonic morphology. We suggest that these domains of movement may parallel the 'zones of movement' of Xenopus.
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斑马鱼原肠的运动区域
脊椎动物原肠形成过程中控制细胞运动的机制尚不清楚。利用斑马鱼胚胎进行的研究表明,在确定这些机制方面有希望,将一个可接近的、光学清晰的胚胎与影响早期发育的突变结合起来。在这篇文章中,我们描述了斑马鱼在囊胚中期、早期表观发育和原肠胚形成阶段的细胞运动,并将“运动域”与胚胎形态联系起来。我们认为这些运动领域可能与爪蟾的“运动区域”平行。
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The Brachyury protein: A T-domain transcription factor The zebrafish no tail gene Introduction: The Brachyury gene The mouse Brachyury (T) gene The T-related gene (Trg), a Brachyury homologue in insects
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